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Self-Vth-Cancellation High-Efficiency CMOS Rectifier Circuit for UHF RFIDs

机译:适用于UHF RFID的自Vth取消高效CMOS整流器电路

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摘要

A high-efficiency CMOS rectifier circuit for UHF RFID applications was developed. The rectifier utilizes a self-Vth-cancellation (SVC) scheme in which the threshold voltage of MOSFETs is cancelled by applying gate bias voltage generated from the output voltage of the rectifier itself. A very simple circuit configuration and zero power dissipation characteristics in biasing enable excellent power conversion efficiency (PCE), especially under small RF input power conditions. At higher RF input power conditions, the PCE of the rectifier automatically decreases. This is the built-in self-power-regulation function. The proposed SVC CMOS rectifier was fabricated with a 0.35-μm CMOS process and the measured performance was compared with those of conventional nMOS, pMOS, and CMOS rectifiers and other types of Vth cancellation rectifiers as well. The SVC CMOS rectifier achieves 32% of PCE at the -10 dBm RF input power condition. This PCE is larger than rectifiers reported to date under this condition.
机译:开发了一种用于UHF RFID应用的高效CMOS整流器电路。整流器利用自Vth消除(SVC)方案,其中通过施加由整流器本身的输出电压生成的栅极偏置电压来消除MOSFET的阈值电压。偏置中非常简单的电路配置和零功耗特性可实现出色的功率转换效率(PCE),尤其是在小射频输入功率条件下。在较高的RF输入功率条件下,整流器的PCE自动降低。这是内置的自功率调节功能。提出的SVC CMOS整流器采用0.35-μmCMOS工艺制造,并将测量的性能与常规nMOS,pMOS和CMOS整流器以及其他类型的Vth消除整流器进行了比较。在-10 dBm RF输入功率条件下,SVC CMOS整流器可实现32%的PCE。在这种情况下,该PCE大于迄今为止报道的整流器。

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